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首页> 外文期刊>IEEE Transactions on Power Systems >Stability Enhancement of Power Systems With High DFIG-Wind Turbine Penetration via Virtual Inertia Planning
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Stability Enhancement of Power Systems With High DFIG-Wind Turbine Penetration via Virtual Inertia Planning

机译:通过虚拟惯性规划增强具有双馈风力发电机透风的电力系统的稳定性

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摘要

Virtual inertia has been extensively implemented in power systems with distributed energy resources, especially wind energy conversion systems. This paper proposes an optimal virtual inertia planning strategy for stability enhancement of power system, which is penetrated with large volume of renewable resources provided by doubly fed induction generators (DFIGs). The stability of DFIG is first analyzed and the concept of critical frequency drop is proposed. Moreover, the intersection area between the two predefined operation curves of DFIG is defined as the stability margin and it is calculated in the form of a function of local virtual inertia. Subsequently, a virtual inertia planning strategy is proposed, wherein a coherency index that considers the homogeneity of the stability margin at each node is presented, followed by a nonconvex optimization problem. The problem is simplified with the Lyapunov function method and resolved. Two case studies are conducted to verify the effectiveness and performance of the proposed approach: a 12-bus system and the IEEE-118 bus system. Both cases show that with the proposed approach, the system stability margin coherency level is enhanced and the general stability is promoted.
机译:虚拟惯性已在具有分布式能源的电力系统(尤其是风能转换系统)中广泛实施。本文提出了一种用于提高电力系统稳定性的最优虚拟惯性规划策略,该策略被双馈感应发电机(DFIG)提供的大量可再生资源所渗透。首先分析了DFIG的稳定性,并提出了临界频率下降的概念。此外,DFIG的两个预定义操作曲线之间的相交区域被定义为稳定性裕度,并以局部虚拟惯性的函数形式进行计算。随后,提出了一种虚拟惯性规划策略,其中提出了考虑每个节点处稳定裕度的均匀性的相干指数,然后提出了非凸优化问题。使用Lyapunov函数方法可以简化问题并解决。进行了两个案例研究,以验证所提出方法的有效性和性能:12总线系统和IEEE-118总线系统。两种情况都表明,该方法提高了系统稳定性裕度的一致性水平,并提高了总体稳定性。

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